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Dark Matter Casts Light on the Early Universe

We show how knowledge of the cold dark matter (CDM) density can be used, in conjunction with measurements of the parameters of a scenario for beyond the Standard Model (BSM) physics, to provide information about the evolution of the Universe before Big Bang Nucleosynthesis (BBN). As examples of non-...

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Detalles Bibliográficos
Autores principales: Arbey, A., Ellis, J., Mahmoudi, F., Robbins, G.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2018)132
http://cds.cern.ch/record/2628422
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author Arbey, A.
Ellis, J.
Mahmoudi, F.
Robbins, G.
author_facet Arbey, A.
Ellis, J.
Mahmoudi, F.
Robbins, G.
author_sort Arbey, A.
collection CERN
description We show how knowledge of the cold dark matter (CDM) density can be used, in conjunction with measurements of the parameters of a scenario for beyond the Standard Model (BSM) physics, to provide information about the evolution of the Universe before Big Bang Nucleosynthesis (BBN). As examples of non-standard evolution, we consider models with a scalar field that may decay into BSM particles, and quintessence models. We illustrate our calculations using various supersymmetric models as representatives of classes of BSM scenarios in which the CDM density is either larger or smaller than the observed density when the early Universe is assumed to be radiation-dominated. In the case of a decaying scalar field, we show how the CDM density can constrain the initial scalar density and the reheating temperature after it decays in BSM scenarios that would yield overdense dark matter in standard radiation-dominated cosmology, and how the decays of the scalar field into BSM particles can be constrained in scenarios that would otherwise yield underdense CDM. We also show how the early evolution of the quintessence field can be constrained in BSM scenarios.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
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spelling cern-26284222023-03-15T04:58:07Zdoi:10.1007/JHEP10(2018)132http://cds.cern.ch/record/2628422engArbey, A.Ellis, J.Mahmoudi, F.Robbins, G.Dark Matter Casts Light on the Early Universeastro-ph.COAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyWe show how knowledge of the cold dark matter (CDM) density can be used, in conjunction with measurements of the parameters of a scenario for beyond the Standard Model (BSM) physics, to provide information about the evolution of the Universe before Big Bang Nucleosynthesis (BBN). As examples of non-standard evolution, we consider models with a scalar field that may decay into BSM particles, and quintessence models. We illustrate our calculations using various supersymmetric models as representatives of classes of BSM scenarios in which the CDM density is either larger or smaller than the observed density when the early Universe is assumed to be radiation-dominated. In the case of a decaying scalar field, we show how the CDM density can constrain the initial scalar density and the reheating temperature after it decays in BSM scenarios that would yield overdense dark matter in standard radiation-dominated cosmology, and how the decays of the scalar field into BSM particles can be constrained in scenarios that would otherwise yield underdense CDM. We also show how the early evolution of the quintessence field can be constrained in BSM scenarios.arXiv:1807.00554CERN-TH-2018-150KCL-PH-TH/2018-30KCL-PH-TH-2018-30oai:cds.cern.ch:26284222018-07-02
spellingShingle astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Arbey, A.
Ellis, J.
Mahmoudi, F.
Robbins, G.
Dark Matter Casts Light on the Early Universe
title Dark Matter Casts Light on the Early Universe
title_full Dark Matter Casts Light on the Early Universe
title_fullStr Dark Matter Casts Light on the Early Universe
title_full_unstemmed Dark Matter Casts Light on the Early Universe
title_short Dark Matter Casts Light on the Early Universe
title_sort dark matter casts light on the early universe
topic astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP10(2018)132
http://cds.cern.ch/record/2628422
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